src/HOL/Quickcheck.thy
author haftmann
Tue May 26 17:29:32 2009 +0200 (2009-05-26)
changeset 31260 4d273d043d59
parent 31245 f8dcca332d4e
child 31267 4a85a4afc97d
permissions -rw-r--r--
separate module for quickcheck generators
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(* Author: Florian Haftmann, TU Muenchen *)
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header {* A simple counterexample generator *}
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theory Quickcheck
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imports Random Code_Eval
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uses ("Tools/quickcheck_generators.ML")
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begin
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notation fcomp (infixl "o>" 60)
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notation scomp (infixl "o\<rightarrow>" 60)
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subsection {* The @{text random} class *}
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class random = typerep +
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  fixes random :: "code_numeral \<Rightarrow> Random.seed \<Rightarrow> ('a \<times> (unit \<Rightarrow> term)) \<times> Random.seed"
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subsection {* Fundamental and numeric types*}
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instantiation bool :: random
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begin
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definition
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  "random i = Random.range i o\<rightarrow>
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    (\<lambda>k. Pair (if (k div 2 = 0) then Code_Eval.valtermify True else Code_Eval.valtermify False))"
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instance ..
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end
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instantiation itself :: (typerep) random
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begin
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definition random_itself :: "code_numeral \<Rightarrow> Random.seed \<Rightarrow> ('a itself \<times> (unit \<Rightarrow> term)) \<times> Random.seed" where
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  "random_itself _ = Pair (Code_Eval.valtermify TYPE('a))"
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instance ..
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end
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instantiation nat :: random
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begin
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definition random_nat :: "code_numeral \<Rightarrow> Random.seed \<Rightarrow> (nat \<times> (unit \<Rightarrow> Code_Eval.term)) \<times> Random.seed" where
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  "random_nat i = Random.range (i + 1) o\<rightarrow> (\<lambda>k. Pair (
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     let n = Code_Numeral.nat_of k
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     in (n, \<lambda>_. Code_Eval.term_of n)))"
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instance ..
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end
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instantiation int :: random
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begin
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definition
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  "random i = Random.range (2 * i + 1) o\<rightarrow> (\<lambda>k. Pair (
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     let j = (if k \<ge> i then Code_Numeral.int_of (k - i) else - Code_Numeral.int_of (i - k))
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     in (j, \<lambda>_. Code_Eval.term_of j)))"
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instance ..
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end
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subsection {* Complex generators *}
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definition collapse :: "('a \<Rightarrow> ('a \<Rightarrow> 'b \<times> 'a) \<times> 'a) \<Rightarrow> 'a \<Rightarrow> 'b \<times> 'a" where
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  "collapse f = (f o\<rightarrow> id)"
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definition beyond :: "code_numeral \<Rightarrow> code_numeral \<Rightarrow> code_numeral" where
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  "beyond k l = (if l > k then l else 0)"
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use "Tools/quickcheck_generators.ML"
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setup {* Quickcheck_Generators.setup *}
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code_reserved Quickcheck Quickcheck_Generators
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text {* Type @{typ "'a \<Rightarrow> 'b"} *}
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axiomatization random_fun_aux :: "typerep \<Rightarrow> typerep \<Rightarrow> ('a \<Rightarrow> 'a \<Rightarrow> bool) \<Rightarrow> ('a \<Rightarrow> term)
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  \<Rightarrow> (Random.seed \<Rightarrow> ('b \<times> (unit \<Rightarrow> term)) \<times> Random.seed) \<Rightarrow> (Random.seed \<Rightarrow> Random.seed \<times> Random.seed)
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  \<Rightarrow> Random.seed \<Rightarrow> (('a \<Rightarrow> 'b) \<times> (unit \<Rightarrow> term)) \<times> Random.seed"
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code_const random_fun_aux (Quickcheck "Quickcheck'_Generators.random'_fun")
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  -- {* With enough criminal energy this can be abused to derive @{prop False};
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  for this reason we use a distinguished target @{text Quickcheck}
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  not spoiling the regular trusted code generation *}
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instantiation "fun" :: ("{eq, term_of}", "{type, random}") random
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begin
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definition random_fun :: "code_numeral \<Rightarrow> Random.seed \<Rightarrow> (('a \<Rightarrow> 'b) \<times> (unit \<Rightarrow> term)) \<times> Random.seed" where
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  "random n = random_fun_aux TYPEREP('a) TYPEREP('b) (op =) Code_Eval.term_of (random n) Random.split_seed"
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instance ..
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end
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no_notation fcomp (infixl "o>" 60)
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no_notation scomp (infixl "o\<rightarrow>" 60)
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end